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TNF receptor 1-dependent beta cell toxicity as an effector pathway in autoimmune diabetes
D Kägi1, A Ho, B Odermatt
1Ontario Cancer Institute/Amgen Institute, Toronto, Canada. dkagi@amgen.com
Abstract:
Autoimmune diabetes is characterized by a chronic progressive inflammatory autoimmune reaction that ultimately causes the selective elimination of pancreatic beta cells. To address the question of whether the cell death-inducing cytokines TNF and lymphotoxin alpha are involved in this process, we generated nonobese diabetic (NOD) mice that are deficient for TNF receptor 1 (TNFR1 or TNFRp55). Insulitis developed in these mice similarly to that in normal control NOD mice, but progression to diabetes was completely abrogated. Since this was probably due to the complex immunomodulatory effects of TNF and lymphotoxin alpha signaled via TNFR1 on lymphohemopoietic cells, adoptive transfer experiments with spleen cells from diabetic NOD mice were conducted. It was found that the absence of TNFR1 in recipients delayed diabetes induced by normal control and precluded diabetes induced by perforin-deficient spleen cells. In a CD8+ T cell-mediated model of diabetes, however, diabetes induced by adoptive transfer of TCR transgenic lymphocytic choriomeningitis virus glycoprotein-specific CD8+ T cells was not delayed by the absence of TNFR1 in recipient mice. Together with the described expression patterns of perforin and TNF in the mononuclear islet infiltrates of NOD mice, these results indicate that two diabetogenic effector mechanisms are delivered by distinct cell populations: CD8+ T cells lyse beta cells via perforin-dependent cytotoxicity, whereas CD4+ T cells, macrophages, and dendritic cells contribute to diabetes development via TNFR1-dependent beta cell toxicity.
Insights
Autoimmune diabetes progression in NOD mice was halted by removing TNF receptor 1 (TNFR1). This suggests TNFR1-dependent pathways, distinct from CD8+ T cell cytotoxicity, are crucial for beta cell destruction in autoimmune diabetes.
Area of Science:
- Immunology
- Endocrinology
- Pathology
Background:
- Autoimmune diabetes involves chronic inflammation and pancreatic beta cell loss.
- Tumor necrosis factor (TNF) and lymphotoxin alpha are cytokines implicated in cell death.
- The role of TNF receptor 1 (TNFR1) in autoimmune diabetes pathogenesis is not fully understood.
Purpose of the Study:
- To investigate the involvement of TNFR1 in the development of autoimmune diabetes.
- To elucidate the specific mechanisms by which TNFR1 signaling contributes to beta cell destruction.
Main Methods:
- Generated nonobese diabetic (NOD) mice lacking TNFR1.
- Conducted adoptive transfer experiments using spleen cells from diabetic NOD mice into recipient mice with varying TNFR1 status.
- Utilized a CD8+ T cell-mediated diabetes model.
Main Results:
- NOD mice deficient in TNFR1 showed normal insulitis but no progression to diabetes.
- Absence of TNFR1 in recipients delayed diabetes induced by normal spleen cells and prevented it with perforin-deficient cells.
- Diabetes induced by specific CD8+ T cells was not affected by TNFR1 deficiency in recipients.
Conclusions:
- Two distinct diabetogenic mechanisms exist in autoimmune diabetes.
- CD8+ T cells mediate beta cell lysis via perforin-dependent cytotoxicity.
- CD4+ T cells, macrophages, and dendritic cells contribute to diabetes via TNFR1-dependent beta cell toxicity.